APPARATUS AND METHOD FOR GENERATING THERMALLY-ENHANCED TREATMENT LIQUIDS
    1.
    发明申请
    APPARATUS AND METHOD FOR GENERATING THERMALLY-ENHANCED TREATMENT LIQUIDS 审中-公开
    用于产生热增强处理液的装置和方法

    公开(公告)号:WO2013112807A1

    公开(公告)日:2013-08-01

    申请号:PCT/US2013/023106

    申请日:2013-01-25

    Abstract: A cleaning system (10a) comprising a liquid source (12) configured to provide a feed liquid, an electrolysis cell (18) configured to receive the feed liquid and to electrochemically activate the feed liquid to provide an electrochemically-activated liquid, where the electrochemical activation also heats the feed liquid such that the electrochemically-activated liquid is heated, and a dispenser (20) configured to dispense the electrochemically-activated liquid.

    Abstract translation: 一种清洁系统(10a),包括构造成提供进料液体的液体源(12),被配置为接收进料液体并电化学活化进料液体以提供电化学活化液体的电解槽(18),其中电化学 激活还加热进料液体,使得电化学活化的液体被加热,以及配置成分配电化学活化液体的分配器(20)。

    METHOD AND APPARATUS FOR PROCESSING LIVESTOCK CARCASSES TO DESTROY MICROORGANISMS
    2.
    发明申请
    METHOD AND APPARATUS FOR PROCESSING LIVESTOCK CARCASSES TO DESTROY MICROORGANISMS 审中-公开
    用于处理杀虫剂以破坏微生物的方法和装置

    公开(公告)号:WO2013126725A1

    公开(公告)日:2013-08-29

    申请号:PCT/US2013/027356

    申请日:2013-02-22

    CPC classification number: A22C17/08 A22C21/0061 A61L2/0088 A61L2202/17

    Abstract: An apparatus (14, 500) and method are provided to clean and sanitize livestock carcasses. The apparatus (14, 500) includes a livestock carcass travel path (18, 504), at least one liquid dispenser (38, 550) configured to dispense liquid (41, 200) to the carcass travel path (18, 504), and at least one treatment electrode (40, 554). A control circuit (32, 320) is configured to cause an alternating electric field to be generated between the electrode (40, 554) and a surface of a carcass along the travel path (18, 504), through the dispensed liquid (41, 200).

    Abstract translation: 提供了一种用于清洁和消毒牲畜屠体的装置(1,4500)和方法。 所述设备(14,500)包括牲畜胎体行进路径(18,504),至少一个液体分配器(38,550),其构造成将液体(41,200)分配到所述胎体行进路径(18,504),以及 至少一个处理电极(40,554)。 控制电路(32,320)被配置为通过所分配的液体(41,40)在电极(40,554)和沿着行进路径(18,504)的胎体表面之间产生交变电场, 200)。

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